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郑子萱

日期:2021年03月25日     作者:     来源:      点击:[]

郑子萱

副教授/博士生导师 

专业:电力系统及其自动化

研究方向:新能源并网运行与稳定控制、储能系统设计与优化运行、电能质量与优质供电

联系地址:四川大学望江校区基础教学楼B104

箱:scuzzx@163.comzhengzixuan@scu.edu.cn

学习经历

  • 2012.09 2017.07  yl6809永利官网 电力系统及其自动化专业   博士(硕博连读)

  • 2008.09 — 2012.07  yl6809永利官网 电气工程及其自动化专业   本科

工作经历

  • 2023.06 至今  yl6809永利官网 电气工程系 副教授/博导

  • 2020.09 2023.06   yl6809永利官网 电气工程系  副教授/硕导

  • 2017.09 2020.09  yl6809永利官网 电气工程系  助理研究员

公共服务

  1. IEEE会员; IEEE中国超导专业委员会委员,四川大学电能质量省级重点实验室常务副主任。

  2. 担任《IEEE Transactions on Power Delivery》、《IET Generation, Transmission & Distribution》、《IEEE Transactions on Industry Applications》、《Electric Power System Research》、《IEEE Transactions on Applied Superconductivity》、《电网技术》、《电力自动化设备》、《电力系统保护与控制》、《中国测试》等杂志的审稿人。

  3. 国标GBT 39269-2020《电压暂降/短时中断 低压设备耐受特性测试方法》起草人(8/26)【状态:已发布】。

发表论文

  1. [1] Zheng Zixuan; Chen Xiaoyuan; Xiao Xianyong; Gou Huayu; Zhang Mingshun; Jiang Shan; Shen Boyang; Fu Lin. An Ultra-Low-Loss Fault-Current-Limiting Z-Source LVDC Circuit Breaker Using Cryogenic Power Electronics (CPE)[J]. IEEE Transactions on Power Electronics, 2022, doi: 10.1109/TPEL.2023.3237724, Early access.

  2. [2] Zheng Zixuan, Chen Yu, Chen Xiaoyuan, Shen Boyang, Xiao Xianyong, Jiang Shan, Zhang Mingshun, Gou Huayu, Pang Zhou, Lei Yi. Hybrid energy transmission for liquefied shale gas and electricity using cryogenic and superconducting technologies: A technical and economic study of Sichuan, China[J]. Fuel, 2023, 333(2), 126333.

  3. [3] Xie Qi, Zheng Zixuan*, Wang Yang, Hu Wenxi, Xiao Xian-Yong, Du Kaijian, Ren Jie. Analysis of transient voltage disturbances in LCC-HVDC sending systems caused by commutation failures[J]. IEEE Transactions on Power Delivery, 2022, 37(5): 4370-4381.

  4. [4] Pang, Simian, Zheng Zixuan*; Xiao Xianyong; Huang Chunjun; Zhang Shu; Li Jie; Zong Yi; You Shi. Collaborative Power Tracking Method of Diversified Thermal Loads for Optimal Demand Response: A MILP-Based Decomposition Algorithm [J]. Applied Energy, vol. 327, 2022, p. 120006.

  5. [5] Ren Jie, Wang Yang, Zheng Zixuan*, Xiao Xianyong, Zou Yi, Zong Yi, Huang Chunjun*. Signature POWIs for DFIG under LVRT conditions: Analysis, experiments and recommendations[J]. International Journal of Electrical Power & Energy Systems, 2022, 136, Art no. 107622.

  6. [6] Xie Qi, Xiao Xianyong, Zheng zixuan*, Wang Ying, Song Donghui, Du Kaijian, Zou Yi, Zhang Jiachen. An improved reactive power control strategy for LCC-HVDC to mitigate sending end transient voltage disturbance caused by commutation failures[J]. International Journal of Electrical Power & Energy Systems, 2023,146, article sequence number: 108706.

  7. [7] Zheng Zixuan, Song Donghui, Du Kaijian, Xiao Xianyong, Renjie, Q. Xie. A Continuous Fault Ride-through Scheme for DFIGs under Commutation Failures in LCC-HVDC Transmission Systems[J]. Journal of Modern Power Systems and Clean Energy, 2022, Early access.

  8. [8] Ren Jie, Xiao Xianyong, Zheng Zixuan*, Ma Zhicheng. A SMES-Based Dynamic Current Limiter to Improve the LVRT Capability of DFIG-Based WECS[J]. IEEE Transactions on Applied Superconductivity, 2021, 31(8), 1-5, article sequence number: 5401805.

  9. [9] Guo Yawei, Zheng Zixuan, Xie Qi and Zhao Jinshuai*. Study of Resistive Type SFCL for Limiting Inrush Current of LCC-HVDC Converter Transformer[J]. IEEE Transactions on Applied Superconductivity, 2021, 31(8), 1-4, article sequence number: 5500804.

  10. [10] Xie Qi, Zheng Zixuan*, Huang Chunjun and Dai Tingting. Coordinated Fault Ride Through Method for PMSG-Based Wind Turbine Using SFCL and Modified Control Strategy.[J]. IEEE Transactions on Applied Superconductivity, 2021, 31(8), 1-5, article sequence number: 5402805.

  11. [11] Zheng Zixuan, Xie, Qi, Huang Chunjun, Xiao Xianyong, Li Changsong. Superconducting Technology Based Fault Ride Through Strategy for PMSG-Based Wind Turbine Generator: A Comprehensive Review[J]. IEEE Transactions on Applied Superconductivity. 2021, 31, 5403106.

  12. [12] Du KaiJian, Ma Xi-Ping, Zheng ZiXuan, Li ChangSong, Hu WenXi*, Dong Kai-Song. LVRT Capability Improvement of DFIG-Based Wind Turbines With a Modified Bridge-Resistive-Type SFCL[J]. IEEE Transactions on Applied Superconductivity, 2021, 31(8), 1-5, article sequence number: 5603005.

  13. [13] Zheng Zixuan, Chen Xulin, Hu Wenxi,Wang Ying, Zong Yi, Huang Chunjun, Ni Fuyao. Dual Model Predictive Controlled Hybrid Energy Storage System for Naval DC Microgrids[J]. IEEE Transactions on Transportation Electrification, 2023, 9(1):156-168.

  14. [14] Ni fuyao, Zheng Zixuan*, Xie Qi, Xiao Xianyong, Zong Yi, Huang Chunjun. Enhancing resilience of DC microgrids with model predictive control based hybrid energy storage system[J]. International Journal of Electrical Power & Energy Systems, 2021,128(1):106738.

  15. [15] Zheng Zixuan, Ren Jie, Xiao Xianyong, Huang Chunjun, Wang Yang, Xie Qi. Response Mechanism of DFIG to Transient Voltage Disturbance under Commutation Failure of LCC-HVDC System[J]. IEEE Transactions on Power Delivery, 2020, 35(6).

  16. [16] Huang Chunjun, Zheng Zixuan*, Xiao Xianyong, Chen Xiaoyuan. Enhancing low-voltage ride-through capability of PMSG based on cost-effective fault current limiter and modified WTG control[J]. Electric Power Systems Research, 2020, 185:106358.

  17. [17] Huang Chunjun, Zheng Zixuan*, Xiao Xianyong, Chen Xiaoyuan. Cooperative strategy of SMES device and modified control for cost-effective fault ride-through enhancement and power smoothing of 10 MW class superconducting wind turbine[J]. Journal of Renewable and Sustainable Energy, 2020, 12(3):033302.

  18. [18] Xie Qi, Zheng Zixuan*, Xiao Xianyong, Huang Chunjun, Zheng Jiaqu, Ren Jie. Enhancing the HVRT capability of DFIG-based wind farms using cooperative rotor-side SMES considering blocking fault of LCC-HVDC system[J]. CSEE Journal of Power and Energy Systems, 2021, 7 (4), 698-707.

  19. [19] Du Kaijian, Zheng Zixuan*, Xiao Xianyong, et al. Suppressing output power fluctuation and improving FRT Capability of DFIG based wind energy conversion system with SMES and dual mode protection scheme[J]. IET Generation Transmission & Distribution, 2021, 15 (12), 1820-1829.

  20. [20] Wang Ying, Tan Rui, Zheng Zixuan*, Ni Fuyao and Xiao Xianyong. Method to Estimate Sag Frequency in Doubly Fed Induction Generator Integrated Power System Based on Adaptive Kernel Density Estimation[J]. IET Generation, TransmissionDistribution, 2020, 14(7):1261-1270.

  21. [21] Xiao Xianyong, Gao Ruilin, Zheng Zixuan* and Li Changsong. Cooperative Operation of R-SFCL and Online Current Limitation Strategy of GCPVS Under Asymmetrical Faults[J]. IEEE Transactions on Applied Superconductivity, 2019, 29 (2), article sequence number: 5601506.

  22. [22] Zheng Zixuan, Xiao Xianyong, Huang Chunjun, and Li Changsong. Enhancing Transient Voltage Quality in a Distribution Power System With SMES-Based DVR and SFCL[J]. IEEE Transactions on Applied Superconductivity, 2019, 29 (2), 1-5, article sequence number: 5400405.

  23. [23] Zheng Zixuan, Huang Chunjun, Yang Ruohuan, Xiao Xianyong and Li Changsong. A Low Voltage Ride Through Scheme for DFIG-Based Wind Farm With SFCL and RSC Control[J]. IEEE Transactions on Applied Superconductivity, 2019, 29(2), 1-5, article sequence number. 5601005.

  24. [24] Zheng Zixuan, Xiao Xianyong, Chen Xiaoyuan, Huang Chunjun, Zhao Lihua*, and Li Changsong. Performance Evaluation of a MW-Class SMES-BES DVR System for Mitigation of Voltage Quality Disturbances[J]. IEEE Transactions on Industry Applications, 2018, 54 (4),3090-3099.

  25. [25] Zheng Zixuan, Xiao Xianyong, Chen Xiaoyuan, Huang Chunjun, and Xu Jiao. Performance Evaluation of a MW-Class SMES-Based DVR System for Enhancing Transient Voltage Quality by Using dq Transform Control[J]. IEEE Transactions on Applied Superconductivity, 2018, 28 (4), article sequence number: 5700805.

  26. [26] Xiao Xianyong, Yang Ruohuan, Chen Xiaoyuan, Zheng Zixuan*. Integrated DFIG Protection With a Modified SMES-FCL Under Symmetrical and Asymmetrical Faults[J]. IEEE Transactions on Applied Superconductivity, 2018, 28 (4),1-6.

  27. [27] Zheng Zixuan, Chen Xiaoyuan, Xiao Xianyong* and Huang Chunjun. Design and Evaluation of a Mini-Size SMES Magnet for Hybrid Energy Storage Application in a kW-Class Dynamic Voltage Restorer[J]. IEEE Transactions on Applied Superconductivity, 2017, 27 (7), article sequence number: 5700911.

  28. [28] Zheng Zixuan, Xiao Xianyong, Li Changsong*, Chen Zhen, Zhang Yin. Performance Evaluation of SMES System for Initial and Steady Voltage Sag Compensations[J]. IEEE Transactions on Applied Superconductivity, 2016, 26 (7), 1-5.

  29. [29] Wang Ying, Yang Yixuan, Xiao Xianyong, Zheng Zixuan and Yang Hang. Configuration Strategy of Shared Mitigation Equipment for Voltage Sag Considering the Demands of Users[J]. IET Generation, TransmissionDistribution, 2020, 14 (25) , 6338-6347.

  30. [30] Ren Jie, Xiao Xianyong, Zheng zixuan, Wang Yang, Ma Zhicheng and Liu Kai. Impact of Phase Angle Jump on DFIG under LVRT Conditions: Challenges and Recommendations[J], IEEE Transactions on Power Delivery, 2021, 36 (6), 3701-3713.

  31. [31] Huang Chunjun, Xiao Xianyong, Zheng Zixuan and Wang Ying*. Cooperative control of SFCL and SMES for protecting PMSG-based WTGs under grid fault[J]. IEEE Transactions on Applied Superconductivity, 2019, 29 (2), article sequence number: 5601106.

  32. [32] Du Kaijian, Xiao Xianyong, Wang Ying*, Zheng Zixuan and Li Changsong. Enhancing fault ride-through capability of DFIG-based wind turbines using inductive SFCL with coordinated control[J]. IEEE Transactions on Applied Superconductivity, 2019, 29 (2), article sequence number: 5400506.

  33. [33] Xiao Xianyong, Yang Ruohuan, Zheng Zixuan and Wang Ying *. Cooperative rotor-side SMES and transient control for improving the LVRT capability of grid-connected DFIG-based wind farm control[J]. IEEE Transactions on Applied Superconductivity, 2019, 29(2), article sequence number: 0600204.

  34. [34] Hu Wenxi, Xiao Xianyong*, Zheng Zixuan. Voltage sag/swell waveform analysis method based on multi-dimension characterisation[J]. IET Generation, TransmissionDistribution, 2019, 14 (3) , 486-493.

  35. [35] Chen Zhen, Xiao Xianyong, Li Changsong, Zhang Yin, Zheng Zixuan. Study on Unit Commitment Problem Considering Large-Scale Superconducting Magnetic Energy Storage Systems[J]. IEEE Transactions on Applied Superconductivity, 2016, 26(7), article sequence number: 5701306.

  36. [36] 庞思勉,郑子萱*,肖先勇等.计及多粒度用电属性的热力负荷协同优化调控方法[J].电力系统自动化,2022,46(16):103-112.

  37. [37] 郑子萱,杜凯健,肖先勇等.直流换相失败下计及撬棒保护的双馈风机暂态特性解析与撬棒参数修正[J/OL].中国电机工程学报:1-11[2023-03-27].https://doi.org/10.13334/j.0258-8013.pcsee.212781.

  38. [38] 郑子萱,宋东徽,杜凯健等.基于超导磁储能和变流器重构的DFIG连续故障穿越方案[J].电力自动化设备,2022,42(09):79-86.DOI:10.16081/j.epae.202204007.

  39. [39] 郑子萱,倪扶瑶,汪颖,谢琦.基于模型预测控制混合储能系统的直流微电网韧性提升策略[J].电力自动化设备,2021,41(05):152-159.

  40. [40] 肖先勇,郑子萱*.“双碳”目标下新能源为主体的新型电力系统:贡献、关键技术与挑战[J].工程科学与技术,2022,54(01):47-59.

  41. [41] 张承智,肖先勇,郑子萱*.基于实值深度置信网络的用户侧窃电行为检测[J].电网技术,2019,43(03):1083-1091.

  42. [42] 阮梓航,肖先勇,胡文曦,郑子萱,汪颖.基于多粒度特征选择和模型融合的复合电能质量扰动分类特征优化[J].电力系统保护与控制,2022,50(14):1-10.DOI:10.19783/j.cnki.pspc.211199.

  43. [43] 邹志策,肖先勇,刘阳,郑子萱.考虑撬棒保护接入的双馈感应发电机转子磁链动态特性[J].电力系统自动化,2015,39(22):22-29.

专利

  1. 1计及互补互济运行特性的电网多类型调峰资源规划方法

  2. 2工业用户侧多功能电化学储能系统与运行控制方法

  3. 3兼具电能质量调控功能的兆瓦级混合储能装置和控制方法

  4. 4计及多粒度属性的热力负荷协同调控方法

  5. 5电力扰动模拟分析与控制系统

  6. 6计及直流换相失败因素的送端双馈风机撬棒参数修正方法

  7. 7一种高压直流输电连续扰动下的双馈风机故障穿越方法

  8. 8直流换相失败下双馈感应风机故障穿越系统及穿越方法

  9. 9高比例风电交直流送端电网协同故障穿越方法及装置

  10. 10基于协调控制的双馈感应风机系统及其低电压穿越方法

  11. 11一种用于并网光伏系统的兼容双模式的控制系统及方法

  12. 12一种基于SFCL和超导DVR协同控制的DFIG低电压穿越方法

  13. 13用于提高并网光伏发电系统不对称工况穿越能力的方法

科研项目

作为项目负责人的主要科研项目:

  1. 1、国家自然基金面上项目,直流故障下大规模风电送端系统暂态电压响应机理与引导式防御机制

  2. 2、国家自然基金青年科学基金,基于分段变目标控制的限流型双馈风电场连续故障穿越研究

  3. 3、四川省科技厅重点研发计划,适应油气开采复杂工况的光储直流微电网韧性运行关键技术研究

  4. 4、教育部协同育人项目,基于风光模拟平台的“电能质量及其控制技术”实践

  5. 5、国网宁夏电力有限公司,数字镜像驱动的城市配电网电力扰动智能诊断关键技术研究及应用

  6. 6、国网湖北省电力有限公司电力科学研究院,多元用电需求优质供电关键技术

  7. 7、华北电力科学研究院有限责任公司,光伏系统对发电厂厂用电系统电能质量影响测试及分析

  8. 8、企业委托项目,计及高比例新能源接入的区域配电网电能质量治理技术研究项目

  9. 9、国网湖北省电力有限公司电力科学研究院,东湖高新电压暂降监测系统运维、数据专项分析与典型敏感用户设备测试

  10. 10、国网甘肃省电力公司电力科学研究院,规模化储能电站参与电网多环节调控综合效能评估和提升研究

  11. 11、内蒙古电力(集团)有限责任公司内蒙古电力科学研究院分公司,配电台区电能质量提升关键技术研究与应用

  12. 12、国网甘肃电力公司,直流送端集群式新能源连锁故障穿越关键技术

  13. 13、南方电网广州供电局电力试验研究院,微配网仿真与检测实验室系统升级与维护

  14. 14、国家电网公司总部科技项目,站用直流电源系统智能化技术研究

  15. 15、南方电网广州供电局电力试验研究院,特大型城市配电网电磁暂态云仿真平台关键技术研究及应用

  16. 16、南方电网云浮供电局,优质供电园区关键技术及其示范研究

  17. 17、国网蒙东电力有限公司,支撑高比例新能源系统稳定性的多类型储能调控技术研究服务

著作出版

  1. 1、《理解电能质量问题:电压暂降与短时中断》,翻译组成员,中国电力出版社,2016.12.

  2. 2、《敏感设备与过程电压暂降免疫力》,翻译组成员,华南理工大学出版社,2018.12.

学术探讨

  1. 1、大会宣讲,2018 IEEE International Conference on Applied Superconductivity and Electromagnetic Device, (ASEMD 2018), 2018.4.15-18, 天津

  2. 2、海报宣讲,2017 European Conference on Applied Superconductivity (EUCAS 2017), 2017.9.17.-21,日内瓦,瑞士

  3. 3、大会宣讲,2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (2017EEEIC / I&CPS Europe),2017.6.6-9,米兰,意大利

主讲课程

  1. 1、电磁场(本科)

  2. 2、专业发展趋势分析与英文文献检索(全英文)(本科)

  3. 3、工程伦理(研究生)

  4. 4、新能源电力系统中的电力扰动(研究生)

荣誉奖励

  1. 1、2022年度四川省科学技术进步奖一等奖(项目名称:网-荷协同的电压暂降综合防治关键技术及应用)

  2. 2、2022年度电力科技创新奖一等奖(项目名称:电力电子装备高占比电力系统宽频谐波与谐振防治关键技术与应用)

  3. 3、2020年度电力科技创新奖二等奖(项目名称:配电网高比例分布式光伏接入规划与消纳关键技术及应用)

  4. 4、2018年度四川省科学技术进步奖三等奖(项目名称:电压暂降及其对敏感设备和生产过程影响的评估方法)

  5. 5、2021年度《电网技术》高影响力论文

  6. 6、2020年度IEEE Transactions on Power Delivery杰出审稿人

  7. 7、2018IEEE ASEMD Best Presentation Award


每年招收博士生1名,硕士生3~5名。欢迎联系,zhengzixuan@scu.edu.cn



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